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Thermal effects on Co/Mo2C multilayer mirrors studied by soft x-ray standing wave enhanced photoemission spectroscopy

机译:通过软X射线常设波增强的光曝光光谱学研究了对CO / MO2C多层镜的热效应

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Here is presented the spectroscopic study of the evolution of the first buried interfaces of a B4C capped Co/Mo_2C multilayer mirror induced by thermal treatment up to 600°C. This kind of study is typically performed to simulate the response of multilayer optics working in extreme conditions, as for instance when irradiated by new high brilliance sources as Free Electron Lasers. In fact, the efficiency of multilayers is related to the optical contrast between the alternating high and low density layers, and then to the degree of interdiffusion and the creation or evolution of interface compounds. The presentation is focused on the spectroscopic results obtained by soft x-ray standing wave enhanced photoemission (XSW) from the Mo 3d, B 1s, C 1s, O 1s core levels by using a photon energy close to the Co L_(23) edge and corresponding to the first Bragg peak of the multilayer. The experimental results have been compared with simulations to obtain information both on the chemical state (e.g. oxidation state) and interface morphology in terms of profiles of distribution of elements and interdiffusion of B, oxidized B and C in the interface region. In summary, it is possible to conclude in favour of a good stability of the multilayer in the investigated temperature range, as confirmed by the good performance in terms of reflectivity. These results confirm the usefulness of XSW for this kind analysis of multilayer optics.
机译:这里提出了通过热处理诱导的B4C封端的CO / MO_2C多层镜的第一掩埋界面的演化的光谱研究,该热处理高达600℃。通常进行这种研究以模拟在极端条件下工作的多层光学器件的响应,例如当由新的高亮度源作为自由电子激光器照射时。事实上,多层的效率与交替的高密度层之间的光学对比度有关,然后与相互作用程度和界面化合物的产生或演化之间有关。呈现通过使用靠近CO L_(23)边缘的光子能量,通过使用靠近CO L_(23)边缘的光子能量,专注于来自MO 3D,B 1S,C 1S,O 1S核心水平获得的光谱结果。对应于多层的第一布拉格峰。将实验结果与模拟进行了比较,以获得在界面区域中的元素分布和相互作用的分布和相互作用的曲线方面的化学状态(例如氧化状态)和界面形态。总之,可以得出多层在研究温度范围内的良好稳定性,如反射率方面的良好性能所证实。这些结果证实了XSW对多层光学的这种分析的有用性。

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